Abstract
The hydrolysis of the iron-binding blood plasma glycoprotein transferrin (Tf) has been examined at pH = 7.4 in the presence of a series of Zr-substituted polyoxometalates (Zr-POMs) including Keggin (Et2NH2)10[Zr(PW11O39)2]·7H2O (Zr-K 1:2), (Et2NH2)8[{α-PW11O39Zr-(µ-OH) (H2O)}2]·7H2O (Zr-K 2:2), Wells-Dawson K15H[Zr(α2-P2W17O61)2]·25H2O (Zr-WD 1:2), Na14[Zr4(α-P2W16O59)2(µ3-O)2(µ-OH)2(H2O)4]·57H2O(Zr-WD4:2)andLindqvist(Me4N)2[ZrW5O18(H2O)3] (Zr-L 1:1), (nBu4N)6[(ZrW5O18(µ–OH))2]·2H2O (Zr-L 2:2)) type POMs. Incubation of transferrin with Zr-POMs resulted in formation of 13 polypeptide fragments that were observed on sodium dodecyl sulfate poly(acrylamide) gel electrophoresis (SDS-PAGE), but the hydrolysis efficiency varied depending on the nature of Zr-POMs. Molecular interactions between Zr-POMs and transferrin were investigated by using a range of complementary techniques such as tryptophan fluorescence, circular dichroism (CD), 31P-NMR spectroscopy, in order to gain better understanding of different efficiency of investigated Zr-POMs. A tryptophan fluorescence quenching study revealed that the most reactive Zr-WD species show the strongest interaction toward transferrin. The CD results demonstrated that interaction of Zr-POMs and transferrin in buffer solution result in significant secondary structure changes. The speciation of Zr-POMs has been followed by 31P-NMR spectroscopy in the presence and absence of transferrin, providing insight into stability of the catalysts under reaction condition.
Author supplied keywords
Cite
CITATION STYLE
van Rompuy, L. S., Savić, N. D., Rodriguez, A., & Parac-Vogt, T. N. (2020). Selective hydrolysis of transferrin promoted by Zr-substituted polyoxometalates. Molecules, 25(15). https://doi.org/10.3390/molecules25153472
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.